利用模拟校验和对线性控制系统进行实时校验

Suvadeep Banerjee, A. Banerjee, A. Chatterjee, J. Abraham
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引用次数: 11

摘要

在最近的过去,在传感器网络设计、多智能体系统(如自动驾驶汽车和机器人)中出现了大量复杂的控制问题。虽然先前的研究主要集中在实时系统的最优控制器的设计上,但在未来,由于此类系统的移动性和自主性,对其进行定期维护将变得越来越困难。此外,在安全关键的实时应用中,出于可靠性和安全性的考虑,对工厂及其控制器功能进行实时监测将变得越来越必要。在本文中,我们首次开发了一种理论,用于在由设备及其控制器组成的线性控制系统中实现低开销和高覆盖率的瞬态错误和永久故障检测。该方法在一个伺服电机控制问题上得到了验证。结果表明,采用该方法可以实时检测出小的参数扰动和瞬态误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time checking of linear control systems using analog checksums
In the recent past, there has been a proliferation of complex control problems in sensor network design, multi-agent systems such as autonomous vehicles and robotics, to name a few. While prior research has focused on the design of optimal controllers for real-time systems, in the future it will become increasingly difficult to perform periodic maintenance of such systems due to their mobile and autonomous nature. Moreover, in safety-critical real-time applications it will become increasingly necessary to perform real-time monitoring of the plant as well as its controller functions for reasons of reliability and safety. In this paper, we develop, for the first time, a theory for implementing low-overhead and high coverage detection of transient errors and permanent faults in linear control systems consisting of the plant and its controller using analog checksums. The approach is demonstrated on a servo-motor control problem. It is shown that small parametric perturbations as well as transient errors are detected in real-time using the proposed checking methodology.
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